Walton Ian M, Cox Jordan M, Myers Shea D, Benson Cassidy A, Mitchell Travis B, Bateman Gage S, Sylvester Eric D, Chen Yu-Sheng, Benedict Jason B
Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, New York 14260-3000, USA.
Center for Advance Radiation Sources, The University of Chicago, Argonne, Illinois 60439, USA.
Struct Dyn. 2020 Jun 23;7(3):034305. doi: 10.1063/4.0000015. eCollection 2020 May.
Understanding guest exchange processes in metal-organic frameworks is an important step toward the rational design of functional materials with tailor-made properties. The dehydration of the flexible metal-organic framework [Co(AIP)(bpy)0.5(HO)]•2HO was studied by novel dynamic x-ray diffraction techniques. The complex mechanism of dehydration, along with the as-yet unreported metastable structures, was determined. The structural information obtained by the application of these techniques helps to elucidate the important guest-host interactions involved in shaping the structural landscape of the framework lattice and to highlight the importance of utilizing this technique in the characterization of functional framework materials.
了解金属有机框架中的客体交换过程是朝着合理设计具有定制特性的功能材料迈出的重要一步。通过新型动态X射线衍射技术研究了柔性金属有机框架[Co(AIP)(bpy)0.5(HO)]•2HO的脱水过程。确定了复杂的脱水机制以及尚未报道的亚稳结构。应用这些技术获得的结构信息有助于阐明在塑造框架晶格结构景观中涉及的重要客体-主体相互作用,并突出利用该技术表征功能框架材料的重要性。